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首页> 外文期刊>Global change biology >Leap frog in slow motion: Divergent responses of tree species and life stages to climatic warming in Great Basin subalpine forests
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Leap frog in slow motion: Divergent responses of tree species and life stages to climatic warming in Great Basin subalpine forests

机译:慢动作中的跳跃青蛙:在大盆地血流血鬼森林中对抗气候变暖的树木和生活阶段的发散回应

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In response to climate warming, subalpine treelines are expected to move up in elevation since treelines are generally controlled by growing season temperature. Where treeline is advancing, dispersal differences and early life stage environmental tolerances are likely to affect how species expand their ranges. Species with an establishment advantage will colonize newly available habitat first, potentially excluding species that have slower establishment rates. Using a network of plots across five mountain ranges, we described patterns of upslope elevational range shift for the two dominant Great Basin subalpine species, limber pine and Great Basin bristlecone pine. We found that the Great Basin treeline for these species is expanding upslope with a mean vertical elevation shift of 19.1m since 1950, which is lower than what we might expect based on temperature increases alone. The largest advances were on limber pine-dominated granitic soils, on west aspects, and at lower latitudes. Bristlecone pine juveniles establishing above treeline share some environmental associations with bristlecone adults. Limber pine above-treeline juveniles, in contrast, are prevalent across environmental conditions and share few environmental associations with limber pine adults. Strikingly, limber pine is establishing above treeline throughout the region without regard to site characteristic such as soil type, slope, aspect, or soil texture. Although limber pine is often rare at treeline where it coexists with bristlecone pine, limber pine juveniles dominate above treeline even on calcareous soils that are core bristlecone pine habitat. Limber pine is successfully leap-frogging over bristlecone pine, probably because of its strong dispersal advantage and broader tolerances for establishment. This early-stage dominance indicates the potential for the species composition of treeline to change in response to climate change. More broadly, it shows how species differences in dispersal and establishment may result in future communities with very different specific composition.
机译:为了应对气候变暖,预计苏尔坡前沿在高度上升以来,自身的季节温度普遍控制。如果胫骨线促进,分散差异和早期寿命的环境耐受性可能会影响物种如何扩大它们的范围。具有企业优势的物种将首先殖民地栖息地,潜在的栖息地,潜在的栖息地具有较慢的建立率。使用跨五个山区范围的地块网络,我们描述了两种主导巨大盆地亚马林种类,诽谤和大盆地牙龈松木的上升式高距离转移模式。我们发现,这些物种的伟大盆地三蜥是扩展的上坡,自1950年以来的平均垂直高程偏移量为19.1亿,这低于我们可能期望的基于温度单独增加。最大的进展是在西方方面,较低的纬度地区和较低的纬度。 Bristlecone Pine少年建立以上的特里德里的人与Bristlecone成年人分享了一些环境协会。相比之下,紫纸松树幼虫在环境条件下普遍存在,与跛行松树成年人分享少量环保协会。引人注目地,跛行松树在整个地区建立以上特尔滨,而不考虑现场特征,如土壤类型,坡,方面或土壤质地。虽然瑞士松树往往很少见,但它与刷毛松树共存,跛行松幼羽统治在以核心牙龈松树栖息地的钙质土壤上面。 Limber Pine成功地跨越了Bristlecone Pine,可能是因为它具有强大的分散优势和更广泛的建立公差。这种早期阶段的优势表明,Treeline的物种组成的可能性因气候变化而改变。更广泛地,它表明了分散和建立的种类差异如何可能导致未来的群体具有截然不同的特定组成。

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